獐牙菜属植物化学物质加合物的几何和热力学稳定性。(原弗莱明)含有一种恶性疟原虫蛋白

IF 2.1 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY
Ram Lal Swagat Shrestha, Bishnu Prasad Marasini, Jhashanath Adhikari Subin
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引用次数: 0

摘要

由于气候变化,疟疾造成的全球经济负担正在上升,寻找可负担得起的有效和特异性药物已变得至关重要。具有民族植物学价值的植物化学物质相对安全,是作为治疗药物使用的可行选择。植物獐牙菜属(獐牙菜属)的化学成分。通过计算方法确定,对恶性疟原虫(PDB ID: 5K8S)的寄生虫膜蛋白具有很强的结合潜力,恶性疟原虫是该病的病原体。结果表明,前两位候选配体紫红素和獐牙菜素的对接分数分别为−10.064 kcal/mol和−9.904 kcal/mol,而天然配体的对接分数更高,为−8.395 kcal/mol。从分子动力学模拟中提取的几个参数表明,这两个配体形成的蛋白质-配体复合物在几何上和热力学上都是稳定的。配体RMSD曲线的光滑性表明配体达到了平衡,结合自由能发生了变化;ΔGBFE <; 0预测了络合生成反应的持续热力学自发性。初步结果表明,受打击的植物化学物质可以抑制目标蛋白的正常功能,建议进行进一步的实验研究。具有治疗价值的植物的传统知识可以扩展到具有分子水平理解的现代药物,并在资源匮乏的环境中用于药物设计过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Geometrical and thermodynamical stability of the adducts of the phytochemicals of Swertia chirayita (Roxb. Ex Fleming) with a protein of Plasmodium falciparum

The global economic burden of malaria is rising due to climate change, and the search for effective and specific drugs against it that are affordable has become essential. The phytochemicals with ethnobotanical values are relatively safer and are a viable option for their use as therapeutics. The chemical components of a plant, Swertia chirayita (Roxb. Ex Fleming), showed strong binding potential against the parasite membrane protein of Plasmodium falciparum (PDB ID: 5K8S), a causative agent of the disease, as determined from computational methods. The docking scores of the top two candidates, amarogentin and swertinin, were determined to be − 10.064 kcal/mol and − 9.904 kcal/mol, respectively, with the native ligand possessing a higher value of − 8.395 kcal/mol. The protein–ligand complexes formed by these top two ligands were geometrically and thermodynamically stable, as revealed by several parameters extracted from the molecular dynamics simulations. Especially, the smooth nature of ligand RMSD curves denoted the attainment of equilibrium and binding free energy changes; ΔGBFE < 0 predicted the sustained thermodynamical spontaneity of the complex formation reaction. The preliminary results suggest that the hit phytochemicals could inhibit the normal functioning of the target protein and are recommended for further experimental trials. The traditional knowledge of the plants with therapeutic values could be extended to modern medicines with molecular-level understanding and be used in the drug design process in a low-resource setting.

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来源期刊
Structural Chemistry
Structural Chemistry 化学-化学综合
CiteScore
3.80
自引率
11.80%
发文量
227
审稿时长
3.7 months
期刊介绍: Structural Chemistry is an international forum for the publication of peer-reviewed original research papers that cover the condensed and gaseous states of matter and involve numerous techniques for the determination of structure and energetics, their results, and the conclusions derived from these studies. The journal overcomes the unnatural separation in the current literature among the areas of structure determination, energetics, and applications, as well as builds a bridge to other chemical disciplines. Ist comprehensive coverage encompasses broad discussion of results, observation of relationships among various properties, and the description and application of structure and energy information in all domains of chemistry. We welcome the broadest range of accounts of research in structural chemistry involving the discussion of methodologies and structures,experimental, theoretical, and computational, and their combinations. We encourage discussions of structural information collected for their chemicaland biological significance.
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